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    • 3. 发明授权
    • High availability system and execution state control method
    • 高可用性系统和执行状态控制方法
    • US09104638B2
    • 2015-08-11
    • US13601203
    • 2012-08-31
    • Tetsuro Kimura
    • Tetsuro Kimura
    • G06F9/455G06F11/16G06F9/52G06F11/20
    • G06F11/1687G06F9/45533G06F9/52G06F11/1683G06F11/1691G06F11/2038G06F11/2048G06F11/2097
    • A high availability system includes a first computer on which a first virtual computer and a first hypervisor managing the first virtual computer operate, and a second computer on which a second virtual computer and a second hypervisor managing the second virtual computer operate. The first hypervisor includes an acquisition unit which acquires synchronization information associated with an event, wherein the event has occurred in the first virtual computer and accompanies an input to the first virtual computer, and a transmission unit which transmits the acquired synchronization information to the second hypervisor. The second hypervisor includes a reception unit which receives the synchronization information from the first hypervisor, and a control unit which performs control to match an input to the second virtual computer with an input to the first virtual computer in accordance with the received synchronization information.
    • 高可用性系统包括第一计算机,第一虚拟计算机和管理第一虚拟计算机的第一管理程序在其上运行;第二计算机,其上管理第二虚拟计算机的第二虚拟计算机和第二管理程序在其上运行。 第一管理程序包括获取单元,其获取与事件相关联的同步信息,其中所述事件已经在所述第一虚拟计算机中发生并且伴随着到所述第一虚拟计算机的输入,以及发送单元,其将所获取的同步信息发送到所述第二管理程序 。 第二管理程序包括接收来自第一管理程序的同步信息的接收单元,以及控制单元,其根据接收的同步信息执行将输入与第二虚拟计算机的输入与第一虚拟计算机的输入进行匹配。
    • 5. 发明授权
    • High availability system and execution state control method
    • 高可用性系统和执行状态控制方法
    • US07870296B2
    • 2011-01-11
    • US12407223
    • 2009-03-19
    • Kazuhiro FukutomiTetsuro Kimura
    • Kazuhiro FukutomiTetsuro Kimura
    • G06F15/16
    • G06F13/24
    • A high availability system includes a first server computer for a first virtual computer and a first hypervisor and a second server computer for a second virtual computer and a second hypervisor. The first virtual computer executes a processing and the second virtual computer executes the processing behind from the first virtual computer. Information associated with an event is transmitted. The event provides an input to the first virtual computer. In the second hypervisor, a control unit performs, control based on the information to match the execution state of the second virtual computer and that of the first virtual computer, and control associated with the information, when the event associated with the information is predetermined one of an I/O completion interrupt from the first virtual storage and an interrupt handler call corresponding to the interrupt, after the interrupt from the second virtual storage corresponding to the interrupt is caught.
    • 高可用性系统包括用于第一虚拟计算机的第一服务器计算机和用于第二虚拟计算机和第二管理程序的第一管理程序和第二服务器计算机。 第一虚拟计算机执行处理,第二虚拟计算机从第一虚拟计算机执行后处理。 发送与事件相关联的信息。 该事件向第一个虚拟计算机提供输入。 在第二虚拟机管理程序中,当与该信息相关联的事件是预定的时,控制单元基于该信息进行控制以匹配第二虚拟计算机的执行状态和第一虚拟计算机的执行状态以及与该信息相关联的控制 在对应于中断的第二虚拟存储器的中断被捕获之后,来自第一虚拟存储器的I / O完成中断和对应于中断的中断处理程序调用。
    • 7. 发明申请
    • Method for distributing messages, computer, and program
    • 分发消息,计算机和程序的方法
    • US20070013701A1
    • 2007-01-18
    • US11151408
    • 2005-06-14
    • Junichi SegawaHideki YoshidaTetsuro Kimura
    • Junichi SegawaHideki YoshidaTetsuro Kimura
    • G06F15/16
    • G06F13/4022
    • According to an aspect of the present invention, in a virtual space unit area, a message is distributed among computers using a physical topology based on a physical network. This avoids delaying operations in a computer which are related to those in another computer on a virtual space and taking a roundabout route on the physical network for distribution. On the other hand, outside the virtual space unit area, a message is distributed among computers using a virtual topology based on a virtual space. Consequently, the computers forming the physical topology can be limited to those present in the virtual space unit area. It is thus possible to reduce the amount of communication required to measure physical network distances.
    • 根据本发明的一个方面,在虚拟空间单元区域中,使用基于物理网络的物理拓扑在计算机之间分发消息。 这避免了计算机中与虚拟空间上的另一台计算机相关的延迟操作,并在物理网络上采取迂回路由进行分发。 另一方面,在虚拟空间单元区域之外,使用基于虚拟空间的虚拟拓扑在计算机之间分发消息。 因此,形成物理拓扑的计算机可以限于存在于虚拟空间单元区域中的计算机。 因此可以减少测量物理网络距离所需的通信量。
    • 9. 发明授权
    • Method and apparatus for managing single virtual space suitable for
distributed processing
    • 用于管理适合分布式处理的单个虚拟空间的方法和装置
    • US5829041A
    • 1998-10-27
    • US528335
    • 1995-09-14
    • Toshio OkamotoTetsuro KimuraKenji Shirakawa
    • Toshio OkamotoTetsuro KimuraKenji Shirakawa
    • G06F12/08G06F9/50G06F12/02G06F12/06G06F12/10G06F13/00
    • G06F12/1072
    • A single virtual space management scheme suitable for a distributed system. The single virtual space for arranging programs and/or data among a plurality of computers forming the distributed system are divided into a plurality of regions called memory chapters, and a part of the single virtual space to be managed independently by each computer is requested from each computer in units of these memory chapters. Then, a server allocates one of the memory chapters to each computer in response to each request from each computer, while managing allocations of the memory chapters to the plurality of computers so as not to allocate each one of the memory chapters to more than one computers. Each memory chapter allocated to each computer is independently managed by further dividing each memory chapter into a plurality of sub-regions called memory sections, and carrying out an access protection in units of these memory sections at each computer.
    • 适用于分布式系统的单一虚拟空间管理方案。 用于在形成分布式系统的多个计算机之间布置程序和/或数据的单个虚拟空间被划分为称为存储器章节的多个区域,并且从每个计算机请求由每台计算机独立管理的单个虚拟空间的一部分 计算机以这些内存章为单位。 然后,服务器响应于来自每个计算机的每个请求,向每个计算机分配其中一个内存章节,同时将多个存储器章节的分配管理到多个计算机,以便不将每个存储器章节分配给多个计算机 。 分配给每个计算机的每个存储器章节通过将每个存储器章节进一步划分成被称为存储器部分的多个子区域来独立地管理,并且在每个计算机处以这些存储器部分为单位执行访问保护。